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FE Analyses of eddy currents in W7-X plasma vessel

机译:W7-X等离子容器中的涡流有限元分析

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Wendelstein 7-X is the largest optimized stellarator, which is presently in operation in Greifswald, Germany. During possible fast plasma disruptions, relatively small plasma bootstrap current rapidly vanishes and consequently eddy currents are induced in all electrically conducing components including sophisticated Plasma Vessel (PV).This paper focuses on the evaluation of eddy currents induced in PV components due to plasma bootstrap current decay. This task was accomplished by means of a 3D PV FE model. Due to geometry complexity, special emphasis was on specific modelling issues (elements type, mesh density and excitation representation). At first, the PV structure was modelled without 254 ports, which were included subsequently. A procedure to allow quick and easy introduction or exclusion of ports from EM analyses was devised and implemented. In this way, the influence of these structures on the eddy currents could be evaluated efficiently.Peak value of total eddy current running around the PV structure without ports turns out to be around 20 kA Furthermore, results indicate that the ports presence leads to a relatively minor decrease of this value, around 5%. Current concentration around specific ports is highlighted.The paper presents also two examples of re-using FEM and results.
机译:Wendelstein 7-X是最大的优化恒星仪,目前在德国格赖夫斯瓦尔德(Greifswald)运行。在可能的快速等离子体破坏过程中,相对较小的等离子体自举电流会迅速消失,因此在所有导电组件(包括复杂的等离子体容器(PV))中都会感应出涡电流。本文着重于评估由于等离子体自举电流而在PV组件中感应出的涡流。衰变。该任务是通过3D PV FE模型完成的。由于几何形状的复杂性,特别强调特定的建模问题(元素类型,网格密度和激励表示)。首先,对PV结构建模时没有254个端口,随后将其包括在内。设计并实施了一种程序,该程序可快速轻松地从EM分析中引入或排除端口。这样,就可以有效地评估这些结构对涡流的影响。在没有端口的情况下,在PV结构周围运行的总涡流的峰值约为20 kA。此外,结果表明,端口的存在会导致相对的涡流。该值略有下降,约为5%。突出显示了特定端口附近的电流集中。本文还提供了两个重复使用FEM的示例和结果。

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